[ Objeelive] This study aimed to develop a rapid propagation method in a novel temporary immersion bioreactor system (TIS) for herbal plantlets com- pared with solid culture method. [ Method ] Three herbal species, ...[ Objeelive] This study aimed to develop a rapid propagation method in a novel temporary immersion bioreactor system (TIS) for herbal plantlets com- pared with solid culture method. [ Method ] Three herbal species, including Dendrobium candidum Wall. Ex IJndl (D. candidum), Anoectochilus roxburghii (Wall.)Lindl. (A. roxburghii) and Lilium davidii var. unicolor (L. davidii), were used and tested by TIS against solid culture method. [Result] When the two culture methods were compared, the multiplication rate of D. candidum in TIS was found to be 1 : 24.71, which was 6.55 times to those of solid culture. The multiplication rate of A. roxburghii was higher than those of the solid culture, but the plantlets was poorer than those of solid culture at the last phase in bioreactor culture, under the culture condition tested. The multiplication rate in TIS ofL. davidii was 1:17.23 whilst the rate was only 1:4.45 on solid culture, resulting larger bulbs than those in the solid culture. [ Conclusion] The TIS designed in our study could provide a potential mean for industrial production of plandets. However, the parameters vary greatly among different species, and it is to be optimized according to plant species.展开更多
In this work, an efficient and facile method for the preparation of 5-perfluoroalkylation uracils and uracil nucleosides through visible-light-mediated reaction has been developed. The reaction processes in high effic...In this work, an efficient and facile method for the preparation of 5-perfluoroalkylation uracils and uracil nucleosides through visible-light-mediated reaction has been developed. The reaction processes in high efficiency under mild reaction conditions and show broad substrate scope by employing commercial available perfluoroalkyl sources, thus demonstrates high potent application in life and medicinal science.展开更多
基金Supported by National Natural Science Foundation of China(30971898)
文摘[ Objeelive] This study aimed to develop a rapid propagation method in a novel temporary immersion bioreactor system (TIS) for herbal plantlets com- pared with solid culture method. [ Method ] Three herbal species, including Dendrobium candidum Wall. Ex IJndl (D. candidum), Anoectochilus roxburghii (Wall.)Lindl. (A. roxburghii) and Lilium davidii var. unicolor (L. davidii), were used and tested by TIS against solid culture method. [Result] When the two culture methods were compared, the multiplication rate of D. candidum in TIS was found to be 1 : 24.71, which was 6.55 times to those of solid culture. The multiplication rate of A. roxburghii was higher than those of the solid culture, but the plantlets was poorer than those of solid culture at the last phase in bioreactor culture, under the culture condition tested. The multiplication rate in TIS ofL. davidii was 1:17.23 whilst the rate was only 1:4.45 on solid culture, resulting larger bulbs than those in the solid culture. [ Conclusion] The TIS designed in our study could provide a potential mean for industrial production of plandets. However, the parameters vary greatly among different species, and it is to be optimized according to plant species.
基金financially supported by the Young Talents Cultivation Program of the China Association for Science and Technology(No.2015-41)The Training Programme Foundation for the Talents of the Zun Yi Science and Technology Bureau(No.201540)+1 种基金Key Programs of Guizhou Province(125 Program,No.2015039)The Natural Science Foundation of Jiangsu Province(No.BK20141265)
文摘In this work, an efficient and facile method for the preparation of 5-perfluoroalkylation uracils and uracil nucleosides through visible-light-mediated reaction has been developed. The reaction processes in high efficiency under mild reaction conditions and show broad substrate scope by employing commercial available perfluoroalkyl sources, thus demonstrates high potent application in life and medicinal science.